WO2015171081A1 - Magazine loader device - Google Patents

Magazine loader device Download PDF

Info

Publication number
WO2015171081A1
WO2015171081A1 PCT/SI2015/000017 SI2015000017W WO2015171081A1 WO 2015171081 A1 WO2015171081 A1 WO 2015171081A1 SI 2015000017 W SI2015000017 W SI 2015000017W WO 2015171081 A1 WO2015171081 A1 WO 2015171081A1
Authority
WO
WIPO (PCT)
Prior art keywords
cartridge
housing
rotating wheel
opening
lower section
Prior art date
Application number
PCT/SI2015/000017
Other languages
French (fr)
Other versions
WO2015171081A4 (en
Inventor
Jernej ŽIVIC
Jožef LORBEK
Original Assignee
Živic Jernej
Lorbek Jožef
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Živic Jernej, Lorbek Jožef filed Critical Živic Jernej
Priority to US15/309,006 priority Critical patent/US9846005B2/en
Publication of WO2015171081A1 publication Critical patent/WO2015171081A1/en
Publication of WO2015171081A4 publication Critical patent/WO2015171081A4/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A9/00Feeding or loading of ammunition; Magazines; Guiding means for the extracting of cartridges
    • F41A9/82Reloading or unloading of magazines
    • F41A9/83Apparatus or tools for reloading magazines with unbelted ammunition, e.g. cartridge clips
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A9/00Feeding or loading of ammunition; Magazines; Guiding means for the extracting of cartridges
    • F41A9/82Reloading or unloading of magazines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A9/00Feeding or loading of ammunition; Magazines; Guiding means for the extracting of cartridges
    • F41A9/82Reloading or unloading of magazines
    • F41A9/83Apparatus or tools for reloading magazines with unbelted ammunition, e.g. cartridge clips
    • F41A9/84Clips

Definitions

  • the user holds the device by the hollow grip in which a magazine has been placed as he would hold a pistol.
  • the description of the present invention includes the following directions (left, right, top, bottom, front and rear) viewing from the perspective of the device user.
  • the "front part of the cartridge” means the bullet side of the cartridge; on the other hand the “rear part of the cartridge” means the end with the blind side of the cartridge sleeve.
  • a cartridge is inserted onto a previous cartridge, pushing it further downward, whereby all previously loaded cartridges and the pusher 20A move a notch down.
  • the cartridge is then pushed back to slide onto the previous cartridge to the back narrow surface of the housing.
  • the manual loading process is a time consuming operation which also requires certain skills and strength of the person loading the magazine.
  • magazine loader accessories are known in the art (e.g. type “uplula”, “HKS”, “XD magazine Loader”), which operate on the principle of “helping” pushing the magazine cartridge pusher or the top cartridge. All accessories of this type require inserting cartridges manually, one by one, and then lifting such accessory and pushing a cartridge into the magazine manually, by hand.
  • the device 1 consists of two basic sections, namely a lower section 1A and an upper section IB.
  • the lower section 1A represents housing with an exchangeable grip, movable lock and tripping plunger. Individual cartridges, facing the right direction, are manually inserted into the housing, where in the return stroke latch pushes them into the magazine, inserted and secured in the hollow part of the grip.
  • the lower section 1A of the device 1 can be used independently or in combination with the upper section 1 B of the device 1.
  • Fig. 4 Tripping plunger Fig. 5 A: The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge, the latch in the first/initial position;
  • Fig. 5B The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge, the latch in the second position
  • Fig. 5C The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge, the latch in the third position
  • Fig. 5D The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge, the latch in the fourth position
  • Fig. 5E The lower section 1A according to the present invention, in longitudinal section, with cartridge pushed in the magazine - the latch in the fifth/final position;
  • Fig. 6 The upper section IB of the device according to the present invention in the assembled state
  • Fig. 7 The upper section IB of the device according to the present invention in disassembled state, front, left and top side view;
  • Figs. 9A, 9B The main elements of the rotating mechanism
  • Figs. 10A to 10E Step-by-step illustration of the function of the upper section IB of the device and rotating mechanism in case the cartridge is placed in the mechanism bullet down.
  • the right part of the housing 1 1 consists of the top part 21 A and the lower part 2 IB, analogously the left part of the housing 12 consists of the top part 22A and the lower part 22B, respectively.
  • the said top parts 21 A, 22A and lower parts 2 IB, 22B are coupled together pairwise in a detachable manner so that the lower parts 21B and 22B can be replaced, if necessary.
  • Such detachable coupling may include appropriate sliding guides with lock bolt, bolted connection, etc.
  • the said pull handle 14 and latch 13 are detachably coupled by means of a dovetail 13 A, 14A or similar coupling and secured with a screw or spring pin 14B.
  • the latch 13 has on the lower portion upper guides 13B, running alongside the entire latch 13, and lower guides 13C running essentially alongside the front quarter of the latch 13.
  • the upper guides 13B of the latch 13 slide on corresponding guides 12A on the outer side of the left part of the housing 12, and 1 1A on the outer side of the right part of the housing 1 1
  • the lower guides 13C slide on the corresponding guides 12B on the internal side of the left side of the housing 12, and 1 I B on the internal side of the right part of the housing 1 1.
  • the tripping plunger 17 is positioned, detailed in figure 4, consisting of the lower portion 17A and the upper portion 17B, wheel 17C that rotates freely on a pin 17E and the spring 17D.
  • the said elements of tripping plunger 17 are joined by two connecting pins 17E and 17F, where the pin 17E connects the upper portion of the tripping plunger 17B and the wheel, while the pin 17F connects the upper and lower portion of the tripping plunger 17A, 17B and the spring 17D.
  • the tripping plunger slides on corresponding vertical guides 12C of the left part of the housing and 1 1 C of the right part of the housing, while the wheel 17C runs along the controlling curve 13E shown in figures 5A to 5G.
  • both parts 17A and 17B are mutually movable around the axis of the pin 17F only when the upper part 17B rotates forward by approximately 90°, while backward rotation is disabled with square formed upper rear part of the lower end 17 A of the tripping plunger 17.
  • the device In order to provide return vertical motion of the tripping plunger 17, the device contains a spring 18A which is with pin 18 engaged in the grooves of the housing 1 I D and 12D (figure 3 A).
  • the spring 18A pushes with its lover arm to the lover area of the housing, while the upper arm is located in the cavity of the tripping plunger 17, under the pin 17F, so the spring 18A is preloaded.
  • the pin 17F tensions the spring 18A.
  • the said left hand side of the housing 12 of the lower section 1A of the device 1 has a side opening 12E in the upper central part, through which a cartridge is inserted into the device, either manually or as described hereunder, by means of the upper section IB of the device 1.
  • the said left side of the housing 12 has longitudal outer guides 12F, positioned on its outer side, wherethe upper section IB of the device 1 is fixed, as described below, while the left side of latch 13 has an opening 13D for receiving a pin 13D1 (figure 2) running through the slot 34B of the outer fork 34 of the upper section IB (figure 9B), whereby it provides a synchronized drive of the upper section IB of the device 1.
  • a pin 13D1 (figure 2) running through the slot 34B of the outer fork 34 of the upper section IB (figure 9B)
  • Figure 5A shows the lower section 1A of the device 1 in a starting position.
  • the spring 15A pushes the latch 13 in the most front position.
  • An empty magazine 20 is inserted into the cavity of the grip 2 IB, 22B from the bottom side, fixed and secured against falling out by means of a latching member 19.
  • the tripping plunger 17 is in the upper position pushed by the spring 18 A.
  • a cartridge N, facing correctly is inserted through the opening 12E. The user holds the lower part 1A with one hand and with the other pulls the latch 13 back, towards him, by means of the pull handle 14.
  • the latch 13 is moved back to such a distance that the spring 18A raises the tripping plunger 17 in the uppermost position, and the latch 13, with the rear side of guides 13C, pushes cartridge N into the magazine 20.
  • the cartridge N travels onto the pusher 20A in the upper part being clamped by the curved upper part of the magazine 20, so that the pusher 20A cannot push it upwards.
  • the latch 13 is moved to its rearmost position, while the tripping plunger 17 travels by means of wheel 17C along a straight section of the curve 13E and remains in the uppermost position; the cartridge N is pushed into the magazine to the end.
  • the spring 15 A is in its most tensed position.
  • the figure 5F shows the first step of the return stroke towards the starting position.
  • the tripping plunger 17 withdraws with its upper portion 17B from the vertical part of the curve 13E by pivoting forward around the axis of the pin 17F by approximately 90°, and consequently, the lower part 17A of the tripping plunger 17 does not move downward, whereby the entire tripping plunger 17 also pushes the spring 18A upwards.
  • the figure 5G shows the lower section of the device 1A in a starting position.
  • the spring 17A returns the upper part of the tripping plunger in a straight position.
  • the next cartridge Nl is inserted into the device.
  • the plunger 17 pushes the cartridge deeper into the magazine, thus making room for the next cartridge Nl .
  • the user repeats the cycle until the magazine 20 has been loaded to the desired extent, then withdraws it from the cavity of the handle 2 IB, 22B by releasing the latching member 19 and inserts the next one.
  • Figures 6, 7, 8 A and 8B show the upper section IB of the device 1 according to the present invention, consisting of a housing 31 comprised of the right part of the housing 41 and the left part of the housing 51 which are joined by bolts (not shown).
  • the right part of the housing 41 has on its right-hand side a sliding rail 41 B that fits to the guides 12F of the left part of the housing 12 of the lower section 1A of the device 1 described above.
  • the opening 81 on the sliding rail 41B and the opening 82 in the left part of the housing 12 overlap in order to receive a connecting pin (not shown), which interconnects the lower part 1 A and the upper part 1 B of the device 1.
  • the said right and left parts of the housing 41 , 51 have opposite and elongated recessed areas 41 D, 1 D which have in the central part two slots 41 A, 51 A where a freely rotating wheel 35 is mounted.
  • the lower fork 32 which is clamped in the corresponding recesses 32A in both portions of the housing 41 , 51 is positioned under the rotating wheel 35.
  • the housing 31 also contains a rotating wheel 35 and rear fork 33 which is by means of two pins 34A rigidly connected with the outside part of the fork 34 that is located on the outer right side of the right part of the housing 41 where the pins pass through the slot 4 IE.
  • a spring 41 G is positioned in the spring receiving opening 4 IF.
  • the rotating wheel 35 consists of two discs 35 A which are located in parallel planes and interconnected by four pins 35B, uniformly distributed over the outer edges of said discs 35 A, as shown in figure 9A.
  • a protruding pin 35C is located, fitting into the corresponding slot 41 A, 51 A.
  • the pin 35C located on the outer side of the right part of the housing 41 protrudes from the housing 41 by a distance not greater than the thickness of the outer fork 34, and pin 35C on the outer side of the left part of the housing 51 protrudes from the housing 31 by the same distance or it is aligned with the housing.
  • the depth if said recesses 41D and 5 ID of the left part 51 and right part 41 of the housing 31 is equivalent to the sum of the thickness of discs 35A, thickness of plates 41 J and a clearance between 0,5 mm and 1 mm, thereby allowing free rotation of rotating wheel 35.
  • the distance between the discs 35A is approximately the same as the distance between two adjacent pins 35B and corresponds to the largest diameter of the " cartridge N, increased by the necessary clearance which in dependence on the largest diameter of the cartridge ranges between 0,5 mm and 2 mm, preferably between 1 mm and 1 ,5 mm.
  • the rear fork 33 is shown in figure 9B and contains a bottom, horizontal arm 33A, the vertical portion 33B with a protruding cam surface 33D and the upper horizontal arm 33C with a downwardly protruding cam surface 33E and two openings 33F for connection with the outer part of the fork 34.
  • Figure 9B also shows the outer part of the fork 34 consisting of a flat portion which has two openings 34F in the upper rear part with inserted pins 34A for connecting to the rear fork 33.
  • the housing 31 has a vertical opening 31 A in the upper part, with essentially a round cross section, through which individual cartridges enter into the housing 31.
  • a hopper 61 is attached to the slider 4 IK, 5 IK of the circumference of said inlet opening 31 A, where the hopper 61 is covered with a seal 62 with a revision opening 62A, which is preferably covered with a transparent layer, such as plexiglass or similar.
  • FIGS 10A to 10E and 1 1A to 1 IE schematically show the assembled device 1 , wherein the upper section IB is clamped to the lower section 1A in a manner as described above.
  • the grip 2 IB, 22B of the lower section 1 A of the device 1 is not shown.
  • the cartridges are freely dropped into the hopper 61 , covered with the seal 62.
  • the user holds the device 1 in one hand, while at the same time, with the other hand, pulls back, i.e. towards his body, the latch 13 by means of the pull handle 14.
  • the pin 13D1 fixed in the opening 13D of the latch 13 travels along the groove 34B of the outer fork 34 at idle until it reaches the back wall of the groove 34B and pulls the outer fork 34 to the rear position, consequently also moving the rear fork 33 to the rear position.
  • the lever 34C of the outer fork 34 also moves the pin 35C and consequently the rotating wheel 35 to the rear position, and tensions the front arm of the spring 41G, which protrudes from the receiver 41F.
  • the upper horizontal arm 33C of the rear fork 33 is not closing the inlet opening 31 A anymore.
  • the latch 13 When the latch 13 is removed from the foremost position, it initially moves alone until the pin 13D1 reaches the rear wall of the slot 34B of the outer fork 34, which are through the opening 41E rigidly coupled with the rear fork 33 by means of pins 34A. From here onwards the latch 13, the outer fork 34 and the rear fork 33 move together towards the rear position until they reach the point where the vertical lever 34C of the outer fork 34 reaches the right pin 35C of the rotating wheel 35. From here onwards the rotating wheel 35 moves together with the above mentioned elements towards the rear position.
  • the stroke length, i.e. the length between the front most position and rearmost position, of the latch 13 is longer than the stroke length of the outer fork 34 and outer fork 33 assembly, which is however longer than the stroke length of the rotating wheel 35.
  • the cartridge N may fall from the hopper 61 through the opening 31 A into the housing 31 of the lower section I B with bullet facing down or sleeve facing down.
  • the latch 13 By pulling the latch 13 the hopper shakes and consequently the cartridges cannot get jammed.
  • Figure 10A shows a position where the latch is in its rearmost position, the upper horizontal arm 33C of the rear fork 33 is withdrawn in the rearmost position, and the rotating wheel 35 is in the rearmost position, where both rear pins 35B engage on the conical plates 41 J, whereby the rotating wheel 35 is forcibly placed in the correct position.
  • the cartridge N falls from the hopper 61 through the opening 31 A into the housing 31 of the upper section of the device 2 with bullet facing down and stops on the lower fork 32, in the rotating wheel 35, between two adjacent pins 35B.
  • Figure 10B shows the next step wherein the user releases the pull force on the latch 13 and the spring 15A is pushed forward by the lock 13, the spring 41G moves the pin 35C and with it the rotating wheel 35, where the cartridge N is located, to the front most position.
  • the upper horizontal arm 33C of the rear fork 33 has been moved forward, whereby entry of the next cartridge Nl into the housing 31 is made impossible.
  • the cartridge N with the bullet facing down falls through the gap of the lower fork 32 by the length of the bullet.
  • Figure IOC shows the next step where the user further releases the pull force on the latch 13.
  • the upper horizontal arm 33C of the rear fork 33 in this case has no role and passes over the cartridge N and the rotating wheel 35 towards front most position.
  • the lower arm 33A of the rear fork 33 reaches the bullet of the cartridge N.
  • Figure 1 1 B shows the next step wherein the user releases the pull force on the latch and the spring 15A is pushed forward by the lock 13, the spring 41 G moves the pin 35C and with it the rotating wheel 35, which holds the cartridge N, to the front most position.
  • the upper horizontal arm 33C of the rear fork 33 has been moved forward, whereby entry of the next cartridge Nl into the housing 31 is prevented.
  • the cartridge N with the sleeve facing down slides along the upper surface of lower fork 32.
  • Figure 1 1C shows the next step where the user further releases the pull force on the latch 13.
  • the lower horizontal arm 33 A of the rear fork 33 in this case has no role and passes over the cartridge N and the rotating wheel 35 under the lower fork 32 towards the end position.
  • the rear fork 33 during forward travel reaches the cartridge N with the protruding cam surface 33 D pushing it forward from the rotating wheel 35 so that the rotating wheel 35 rotates by approximately 45° due to the weight of the cartridge, which facing correctly falls from the rotating wheel 35 into the opening 41 C and through it into the opening 12E in the lower section 1 A of the device 1.
  • Springs, pins, wheel 17C of the plunger 17 and guide rod 15 are made from a suitable steel
  • parts 17A and 17B of the plunger 17 are made from aluminium or stainless steel
  • lock 13 pull handle 14 the housing of the lower section 1 1 , 12
  • the housing of the upper section 31 are made of composite materials
  • hopper 61 and cover 62 are preferably made of plastic.
  • Movable parts such as forks 32, 33 and 34, plates 41J, rotating wheel 35 are made of suitable steel which must have good sliding properties and is resistant to corrosion. Such materials are known in the art, and therefore will not be specifically described herein.
  • the device 1 according to the present invention as described above is intended for manual use and enables loading of cartridges (N) into a magazine (20) at a rate of 0,5 to 2 cartridges per second, preferably 1 cartridge per second.
  • the device can with minimal adjustments be reworked so that the device can be power-driven by means of a suitable unit such as an electric motor and the like, in combination with a suitable element that converts the rotational movement into translational movement (crank mechanism and eccentric cam), while it is also possible to introduce a pneumatically-driven piston unit and the like.
  • a suitable unit such as an electric motor and the like
  • a suitable element that converts the rotational movement into translational movement crank mechanism and eccentric cam
  • a pneumatically-driven piston unit and the like
  • the above said pull handle 14 should be replaced with a handle shaped so as to permit connection with the drive unit, for example by means of a pin, whereby the handle of the lower section of the device must be rigidly clamped in a suitable clamping device.

Abstract

The present invention discloses a magazine loader device (1) for firearms which consists of a lower section (1A) and upper section (1B). The upper section (1B) receives individual vertically-oriented cartridges from the hopper (61), turns them in the right direction using a rotating mechanism (32, 33, 34, and 35), which is the essential part of the upper section (1B), and pushes them towards the lower section (1A). The lower section (1A) pushes the correctly facing cartridges (N) into the magazine (20) which is inserted into the hollow grip (21B, 22B) of the lower section (1A). The tripping plunger (17) is an essential element of the lower section (1A) which in cooperation with the controlling curve (13E) pushes the cartridge pusher (20A) or the preceding cartridge down by a characterized in that, enables the next cartridge to enter the magazine, and timely retracts, so the cartridge (N) can be pushed into the magazine until the end. The lower section (1A) of the device can also be used independently.

Description

Magazine loader device
Technical field
The subject of invention is a magazine loader device and it relates to firearms, particularly to the field of devices for loading magazines of firearms.
Definition of terms used
According to the present invention the user holds the device by the hollow grip in which a magazine has been placed as he would hold a pistol.
The description of the present invention includes the following directions (left, right, top, bottom, front and rear) viewing from the perspective of the device user. The "front part of the cartridge" means the bullet side of the cartridge; on the other hand the "rear part of the cartridge" means the end with the blind side of the cartridge sleeve.
Description of the technical problem
As shown in figure 3A, the magazine 20 consists of a substantially vertical box-shaped housing which in its interior contains a normal helical coil spring which extends upwards from the base of the housing, at the top of which is a cartridge holder or the so-called magazine cartridge pusher 20A which engages the cartridge that was inserted into the magazine first.
The magazine housing is encased at the lower end and open at the top end. The distance between the longer vertical planes of the housing narrows towards the top of said housing of magazine 20. When the magazine is empty, the pusher 20A remains at the height where said narrowing of the housing 20B starts.
Thus, the feeding compartment is obtained in the upper front end of the magazine housing, into which the first cartridge can be placed on the pusher from the upper side in such a way that a smaller part of the cartridge protrudes through the front narrower plane of the housing, where it is pushed downwards on the pusher and back, so the cartridge slides onto the pusher 20A and with its rear side rests on the rear narrower side of the housing. Thus, the first cartridge is secured below by the pusher, on the top it is secured with the narrow end of the housing, while the rear area is restricted by the rear narrow side of the housing. During loading of each cartridge into the magazine, the pusher moves a notch downwards. In the next and each subsequent step a cartridge is inserted onto a previous cartridge, pushing it further downward, whereby all previously loaded cartridges and the pusher 20A move a notch down. The cartridge is then pushed back to slide onto the previous cartridge to the back narrow surface of the housing.
The manual loading process is a time consuming operation which also requires certain skills and strength of the person loading the magazine.
State of the art
Only magazine loader accessories are known in the art (e.g. type "uplula", "HKS", "XD magazine Loader"), which operate on the principle of "helping" pushing the magazine cartridge pusher or the top cartridge. All accessories of this type require inserting cartridges manually, one by one, and then lifting such accessory and pushing a cartridge into the magazine manually, by hand.
A device of such type is also described in published patent application filed January 13, 2010 in the US application No. 12/686,629 entitled title "Rapid pistol magazine loader", of inventor Edward Steele Meinel, Reston, US.
The invention described in said application suggests insertion of cartridges manual or using specially adapted cartridge packaging. Drive of this device is not shown in patent application, however the proposed operating mode indicates that the device is manually operated in both directions, and elements are guided through the side slots, with variable direction. The description of the device is unclear, and therefore, its operation is questionable, especially regarding synchronization of movements of individual elements, whereby loading of cartridges into the magazine should be enabled.
The disadvantage of above-described solution according to the state of the art lies in the fact, that it is necessary to push a cartridge into the magazine by hand, which is strenuous for the person doing this, or special packaging where cartridges have been already sorted, is required. Brief description of the invention
As described below, the present invention solves the technical problem by introducing a device 1 (figure 1), which allows easy loading of cartridges into the magazine, wherein the device according to the present invention, comprises also a sorting section, sorting the cartridges which come from a hopper, turning each cartridge in the right direction and feeds it to the lower section of the device, facing in the right direction.
The device 1 according to the present invention consists of two basic sections, namely a lower section 1A and an upper section IB. The lower section 1A represents housing with an exchangeable grip, movable lock and tripping plunger. Individual cartridges, facing the right direction, are manually inserted into the housing, where in the return stroke latch pushes them into the magazine, inserted and secured in the hollow part of the grip.
The lower section 1A of the device 1 can be used independently or in combination with the upper section 1 B of the device 1.
The upper section I B consists of a housing which includes a rotating mechanism for turning the cartridges, above which a hopper is provided, into which multiple cartridges are freely dropped and from which individual cartridges fall into the rotating mechanism in a vertical position. Individual cartridge always drops into the rotating mechanism vertically and may be oriented with the bullet facing down or with the sleeve facing down. The rotating mechanism detects the orientation of the cartridge, and depending on its orientation, it rotates it, so the cartridge falls always with the bullet facing down into the inlet opening of the lower section of the device.
Brief description of drawings
The said invention is further described referring to the enclosed drawings, showing:
Fig. 1 : The device 1 according to the present invention, assembled;
Fig. 2: The lower section 1A of the device according to the present invention, assembled;
Fig. 3 A: The lower section 1A of the device according to the present invention in disassembled state, front and top left side view;
Fig. 3B: The lower section 1 A of the device according to the present invention in disassembled state, rear and top left side view;
Fig. 4: Tripping plunger Fig. 5 A: The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge, the latch in the first/initial position;
Fig. 5B: The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge, the latch in the second position; Fig. 5C: The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge, the latch in the third position; Fig. 5D: The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge, the latch in the fourth position; Fig. 5E: The lower section 1A according to the present invention, in longitudinal section, with cartridge pushed in the magazine - the latch in the fifth/final position;
Fig. 5F: The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge - the latch halfway through return stroke; Fig. 5G: The lower section 1A according to the present invention, in longitudinal section, with inserted cartridge - the latch once more in the first/initial position, a next cartridge is inserted;
Fig. 6: The upper section IB of the device according to the present invention in the assembled state;
Fig. 7: The upper section IB of the device according to the present invention in disassembled state, front, left and top side view;
Fig. 8 A: The upper section IB of the device according to the present invention with displayed revolving mechanism, front, left and top side view; Fig. 8B: The upper section IB of the device according to the invention, front, right and top side view;
Figs. 9A, 9B: The main elements of the rotating mechanism;
Figs. 10A to 10E: Step-by-step illustration of the function of the upper section IB of the device and rotating mechanism in case the cartridge is placed in the mechanism bullet down.
Figs. 1 1A to HE: Step-by-step illustration of the function of the upper section I B of the device and rotating mechanism in case the cartridge is placed in the mechanism bullet up. Detailed description of the invention
Figures 2, 3 A and 3B show the lower section 1A of the device 1 according to the present invention. The lower section 1 A consists of the right part of the housing 1 1 , the left part of the housing 12, latch 13 and pull handle 14.
The right part of the housing 1 1 consists of the top part 21 A and the lower part 2 IB, analogously the left part of the housing 12 consists of the top part 22A and the lower part 22B, respectively. The said top parts 21 A, 22A and lower parts 2 IB, 22B are coupled together pairwise in a detachable manner so that the lower parts 21B and 22B can be replaced, if necessary. Such detachable coupling may include appropriate sliding guides with lock bolt, bolted connection, etc.
The said lower parts 2 I B, 22B in assembled state form a hollow grip for insertion of magazine 20 to be charged; therefore the possibility of replacement is necessary so the device can be used with different magazines.
The said pull handle 14 and latch 13 are detachably coupled by means of a dovetail 13 A, 14A or similar coupling and secured with a screw or spring pin 14B. The latch 13 has on the lower portion upper guides 13B, running alongside the entire latch 13, and lower guides 13C running essentially alongside the front quarter of the latch 13.
During operation of the device 1 the upper guides 13B of the latch 13 slide on corresponding guides 12A on the outer side of the left part of the housing 12, and 1 1A on the outer side of the right part of the housing 1 1 , while the lower guides 13C slide on the corresponding guides 12B on the internal side of the left side of the housing 12, and 1 I B on the internal side of the right part of the housing 1 1.
Under the upper guides 13A and above the lower guides 13C of the latch 13, parallel to said guides, runs an opening 13F for receiving a guiding rod 15 of a spring 15A, here the guiding rod is fixed into the holder 16. Behind the said holder 16 the tripping plunger 17 is positioned, detailed in figure 4, consisting of the lower portion 17A and the upper portion 17B, wheel 17C that rotates freely on a pin 17E and the spring 17D. The said elements of tripping plunger 17 are joined by two connecting pins 17E and 17F, where the pin 17E connects the upper portion of the tripping plunger 17B and the wheel, while the pin 17F connects the upper and lower portion of the tripping plunger 17A, 17B and the spring 17D. The tripping plunger slides on corresponding vertical guides 12C of the left part of the housing and 1 1 C of the right part of the housing, while the wheel 17C runs along the controlling curve 13E shown in figures 5A to 5G.
In the assembled state, both parts 17A and 17B are mutually movable around the axis of the pin 17F only when the upper part 17B rotates forward by approximately 90°, while backward rotation is disabled with square formed upper rear part of the lower end 17 A of the tripping plunger 17.
In order to provide return vertical motion of the tripping plunger 17, the device contains a spring 18A which is with pin 18 engaged in the grooves of the housing 1 I D and 12D (figure 3 A). The spring 18A pushes with its lover arm to the lover area of the housing, while the upper arm is located in the cavity of the tripping plunger 17, under the pin 17F, so the spring 18A is preloaded. When tripping plunger 17 travels downwards, the pin 17F tensions the spring 18A.
As shown in figures 3 A and 3B, the most part of the lock 13, approximately along the last three quarters, is hollow. The interior of the top wall of lock 13 has a double-hump controlling curve 13 E, by means of which it controls the tripping plunger 17 with a wheel 17B, so the plunder 17 periodically travels in vertical direction along the corresponding vertical guides of left part of the housing 12C and right part of the housing 1 1 C.
The said left hand side of the housing 12 of the lower section 1A of the device 1 has a side opening 12E in the upper central part, through which a cartridge is inserted into the device, either manually or as described hereunder, by means of the upper section IB of the device 1.
The said left side of the housing 12 has longitudal outer guides 12F, positioned on its outer side, wherethe upper section IB of the device 1 is fixed, as described below, while the left side of latch 13 has an opening 13D for receiving a pin 13D1 (figure 2) running through the slot 34B of the outer fork 34 of the upper section IB (figure 9B), whereby it provides a synchronized drive of the upper section IB of the device 1. Description of operation of the lower section
Operation of the lower section 1A of the device 1 , according to the present invention is demonstrated by individual steps in figures 3 A to 3G, namely in longitudinal section.
Figure 5A shows the lower section 1A of the device 1 in a starting position. The spring 15A pushes the latch 13 in the most front position. An empty magazine 20 is inserted into the cavity of the grip 2 IB, 22B from the bottom side, fixed and secured against falling out by means of a latching member 19. The tripping plunger 17 is in the upper position pushed by the spring 18 A. A cartridge N, facing correctly is inserted through the opening 12E. The user holds the lower part 1A with one hand and with the other pulls the latch 13 back, towards him, by means of the pull handle 14.
In the second step (figure 5B), the latch is moved back, to such a distance that the controlling curve 13E pushes the tripping plunger 17 by means of the wheel 17C in its lowest position so that the bottom part of the tripping plunger 17A pushes the cartridge pusher 20A downwards, while at the same time latch 13 with guides 13C reaches cartridge N. The spring 18A is in the bottom, most tense position.
In the third step (figure 5C), the latch 13 is moved back to such a distance to move the cartridge N for about a third of its length into the magazine 20, the tripping plunger 17 travels by means of wheel 17C along the flat part of the curve 13E and does not move vertically.
In the fourth step (figure 5D), the latch 13 is moved back to such a distance that the spring 18A raises the tripping plunger 17 in the uppermost position, and the latch 13, with the rear side of guides 13C, pushes cartridge N into the magazine 20. The cartridge N travels onto the pusher 20A in the upper part being clamped by the curved upper part of the magazine 20, so that the pusher 20A cannot push it upwards.
In the fifth step (figure 5E), the latch 13 is moved to its rearmost position, while the tripping plunger 17 travels by means of wheel 17C along a straight section of the curve 13E and remains in the uppermost position; the cartridge N is pushed into the magazine to the end. The spring 15 A is in its most tensed position.
Now the user releases the force pulling the latch 13 by means of pull handle 14 toward the body, and the spring 15A in a return stroke pushes the latch 13 towards the starting position. The figure 5F shows the first step of the return stroke towards the starting position. The tripping plunger 17 withdraws with its upper portion 17B from the vertical part of the curve 13E by pivoting forward around the axis of the pin 17F by approximately 90°, and consequently, the lower part 17A of the tripping plunger 17 does not move downward, whereby the entire tripping plunger 17 also pushes the spring 18A upwards.
The figure 5G shows the lower section of the device 1A in a starting position. The spring 17A returns the upper part of the tripping plunger in a straight position. The next cartridge Nl is inserted into the device.
Repeating the above-described cycle, the plunger 17 pushes the cartridge deeper into the magazine, thus making room for the next cartridge Nl . The user repeats the cycle until the magazine 20 has been loaded to the desired extent, then withdraws it from the cavity of the handle 2 IB, 22B by releasing the latching member 19 and inserts the next one.
Upper section of the device
Figures 6, 7, 8 A and 8B show the upper section IB of the device 1 according to the present invention, consisting of a housing 31 comprised of the right part of the housing 41 and the left part of the housing 51 which are joined by bolts (not shown). The right part of the housing 41 has on its right-hand side a sliding rail 41 B that fits to the guides 12F of the left part of the housing 12 of the lower section 1A of the device 1 described above. The opening 81 on the sliding rail 41B and the opening 82 in the left part of the housing 12 overlap in order to receive a connecting pin (not shown), which interconnects the lower part 1 A and the upper part 1 B of the device 1.
The said right part of the housing 41 has on the lower portion a shaped opening 41 C extending through the part of the housing 41 and through the guides 41 B through which facing correctly cartridges enter from the upper section IB to the bottom section 1A of the device 1.
The said right and left parts of the housing 41 , 51 have opposite and elongated recessed areas 41 D, 1 D which have in the central part two slots 41 A, 51 A where a freely rotating wheel 35 is mounted. The lower fork 32 which is clamped in the corresponding recesses 32A in both portions of the housing 41 , 51 is positioned under the rotating wheel 35.
The housing 31 also contains a rotating wheel 35 and rear fork 33 which is by means of two pins 34A rigidly connected with the outside part of the fork 34 that is located on the outer right side of the right part of the housing 41 where the pins pass through the slot 4 IE. On the outer side of the right part of the housing 41 , a spring 41 G is positioned in the spring receiving opening 4 IF.
For a forced correct positioning of the rotating wheel 35 in the rear position (figure 10A, 1 1 A) two conical plates 41 J (only the right one is shown) or similar elements which are latched in the corresponding recesses 41H, 51 H are located in the housing 31. A revision opening 51 L is provided in the left side of the housing 51 , where the said opening 51 L is covered with a transparent covering element 51M.
The rotating wheel 35 consists of two discs 35 A which are located in parallel planes and interconnected by four pins 35B, uniformly distributed over the outer edges of said discs 35 A, as shown in figure 9A.
From the outer side of each disc, a protruding pin 35C is located, fitting into the corresponding slot 41 A, 51 A. The pin 35C located on the outer side of the right part of the housing 41 protrudes from the housing 41 by a distance not greater than the thickness of the outer fork 34, and pin 35C on the outer side of the left part of the housing 51 protrudes from the housing 31 by the same distance or it is aligned with the housing.
The depth if said recesses 41D and 5 ID of the left part 51 and right part 41 of the housing 31 is equivalent to the sum of the thickness of discs 35A, thickness of plates 41 J and a clearance between 0,5 mm and 1 mm, thereby allowing free rotation of rotating wheel 35. The distance between the discs 35A is approximately the same as the distance between two adjacent pins 35B and corresponds to the largest diameter of the " cartridge N, increased by the necessary clearance which in dependence on the largest diameter of the cartridge ranges between 0,5 mm and 2 mm, preferably between 1 mm and 1 ,5 mm.
The rear fork 33 is shown in figure 9B and contains a bottom, horizontal arm 33A, the vertical portion 33B with a protruding cam surface 33D and the upper horizontal arm 33C with a downwardly protruding cam surface 33E and two openings 33F for connection with the outer part of the fork 34.
Figure 9B also shows the outer part of the fork 34 consisting of a flat portion which has two openings 34F in the upper rear part with inserted pins 34A for connecting to the rear fork 33. There is a slot 34B in the central part of the outer fork portion 34 through which extends a pin 13D1 , where the slot 34B runs practically along the entire length of the outer fork portion 34, and in the front part of fork 34 there is a downward protruding lever 34C. In the assembled state, the housing 31 has a vertical opening 31 A in the upper part, with essentially a round cross section, through which individual cartridges enter into the housing 31.
As shown in figure 7, a hopper 61 is attached to the slider 4 IK, 5 IK of the circumference of said inlet opening 31 A, where the hopper 61 is covered with a seal 62 with a revision opening 62A, which is preferably covered with a transparent layer, such as plexiglass or similar.
Figures 10A to 10E and 1 1A to 1 IE schematically show the assembled device 1 , wherein the upper section IB is clamped to the lower section 1A in a manner as described above. The grip 2 IB, 22B of the lower section 1 A of the device 1 is not shown.
Description of device operation
The cartridges are freely dropped into the hopper 61 , covered with the seal 62. The user holds the device 1 in one hand, while at the same time, with the other hand, pulls back, i.e. towards his body, the latch 13 by means of the pull handle 14. The pin 13D1 fixed in the opening 13D of the latch 13 travels along the groove 34B of the outer fork 34 at idle until it reaches the back wall of the groove 34B and pulls the outer fork 34 to the rear position, consequently also moving the rear fork 33 to the rear position. The lever 34C of the outer fork 34 also moves the pin 35C and consequently the rotating wheel 35 to the rear position, and tensions the front arm of the spring 41G, which protrudes from the receiver 41F. The upper horizontal arm 33C of the rear fork 33 is not closing the inlet opening 31 A anymore.
When the latch 13 is removed from the foremost position, it initially moves alone until the pin 13D1 reaches the rear wall of the slot 34B of the outer fork 34, which are through the opening 41E rigidly coupled with the rear fork 33 by means of pins 34A. From here onwards the latch 13, the outer fork 34 and the rear fork 33 move together towards the rear position until they reach the point where the vertical lever 34C of the outer fork 34 reaches the right pin 35C of the rotating wheel 35. From here onwards the rotating wheel 35 moves together with the above mentioned elements towards the rear position.
Consequently, the stroke length, i.e. the length between the front most position and rearmost position, of the latch 13 is longer than the stroke length of the outer fork 34 and outer fork 33 assembly, which is however longer than the stroke length of the rotating wheel 35.
As mentioned above, the cartridge N may fall from the hopper 61 through the opening 31 A into the housing 31 of the lower section I B with bullet facing down or sleeve facing down. By pulling the latch 13 the hopper shakes and consequently the cartridges cannot get jammed.
Operation of the upper section IB for both possibilities is described hereunder. Cartridge with bullet facing down
Figure 10A shows a position where the latch is in its rearmost position, the upper horizontal arm 33C of the rear fork 33 is withdrawn in the rearmost position, and the rotating wheel 35 is in the rearmost position, where both rear pins 35B engage on the conical plates 41 J, whereby the rotating wheel 35 is forcibly placed in the correct position. The cartridge N falls from the hopper 61 through the opening 31 A into the housing 31 of the upper section of the device 2 with bullet facing down and stops on the lower fork 32, in the rotating wheel 35, between two adjacent pins 35B.
Figure 10B shows the next step wherein the user releases the pull force on the latch 13 and the spring 15A is pushed forward by the lock 13, the spring 41G moves the pin 35C and with it the rotating wheel 35, where the cartridge N is located, to the front most position. The upper horizontal arm 33C of the rear fork 33 has been moved forward, whereby entry of the next cartridge Nl into the housing 31 is made impossible. The cartridge N with the bullet facing down falls through the gap of the lower fork 32 by the length of the bullet. Figure IOC shows the next step where the user further releases the pull force on the latch 13. The upper horizontal arm 33C of the rear fork 33 in this case has no role and passes over the cartridge N and the rotating wheel 35 towards front most position. The lower arm 33A of the rear fork 33 reaches the bullet of the cartridge N.
As shown in figures 10D and 10E, the lower arm 33 A of the rear fork 33, during further travel forward, pushes the cartridge N, which is located in the rotating wheel 35, and therefore the rotating wheel 35 rotates, the protruding cam surface 33D reaches the rotating wheel 35 and the correctly facing cartridge N, falls from the rotating wheel 35 into the opening 41C, and through it into the opening 12E in the lower section 1A of the device 1. Cartridge with bullet end facing down
Figure 1 1 A shows the same position as figure 10A where the cartridge N has fallen from hopper 61 through the opening 31 A into the housing 31 of the upper section of the device 2 with the sleeve facing down. The cartridge N stops on the lower fork 32, in the rotating wheel 35, between two adjacent pins 35B.
Figure 1 1 B shows the next step wherein the user releases the pull force on the latch and the spring 15A is pushed forward by the lock 13, the spring 41 G moves the pin 35C and with it the rotating wheel 35, which holds the cartridge N, to the front most position. The upper horizontal arm 33C of the rear fork 33 has been moved forward, whereby entry of the next cartridge Nl into the housing 31 is prevented. The cartridge N with the sleeve facing down slides along the upper surface of lower fork 32. Figure 1 1C shows the next step where the user further releases the pull force on the latch 13. The lower horizontal arm 33 A of the rear fork 33 in this case has no role and passes over the cartridge N and the rotating wheel 35 under the lower fork 32 towards the end position.
The upper horizontal arm 33C of the rear fork 33 reaches the bullet of the cartridge N and the rotating wheel 35 rotates partially towards the front side of the device. During the rear fork forward motion, the protruding cam surface 33E reaches the upper rear pin 35B of the rotating wheel 35 rotating it for the remainder of the stroke to such an extent that the cartridge N is in a horizontal position with the bullet facing forward.
As shown in figures 1 1D and HE, the rear fork 33 during forward travel reaches the cartridge N with the protruding cam surface 33 D pushing it forward from the rotating wheel 35 so that the rotating wheel 35 rotates by approximately 45° due to the weight of the cartridge, which facing correctly falls from the rotating wheel 35 into the opening 41 C and through it into the opening 12E in the lower section 1 A of the device 1.
The operation of the entire device is clear from the above description of operation of both sections 1 A, 1 B of the device 1. Namely, when inserting magazine 20 in the device 1 and dropping the cartridges in the hopper 61 , in the first cycle which starts with the movement of the latch 13 to the rearmost position and finishes with the return stroke of the latch 13 in the front most position, the cartridge N travels from the hopper 61 through the opening 31 A into the rotating wheel 35 and from said rotating wheel 35 the cartridge facing correctly falls into the opening 41 C and through it into the opening 12E in the lower section 1 A of the device 1. In the second cycle, the cartridge N, which is after the first cycle located in the opening 12E, travels into magazine 20, while at the same time the next cartridge falls into the upper section 1 B of the device.
It is therefore a simultaneous operation of both parts of the device 1 where in the second and each subsequent cycle two cartridges travel through the device.
The materials of the said elements of the device according to the present inventions are known in the art. Springs, pins, wheel 17C of the plunger 17 and guide rod 15 are made from a suitable steel, parts 17A and 17B of the plunger 17 are made from aluminium or stainless steel, lock 13, pull handle 14, the housing of the lower section 1 1 , 12, the housing of the upper section 31 are made of composite materials, stainless steel, aluminium alloy and the like, hopper 61 and cover 62 are preferably made of plastic. Movable parts such as forks 32, 33 and 34, plates 41J, rotating wheel 35 are made of suitable steel which must have good sliding properties and is resistant to corrosion. Such materials are known in the art, and therefore will not be specifically described herein.
The device 1 according to the present invention as described above is intended for manual use and enables loading of cartridges (N) into a magazine (20) at a rate of 0,5 to 2 cartridges per second, preferably 1 cartridge per second.
According to the present invention the device can with minimal adjustments be reworked so that the device can be power-driven by means of a suitable unit such as an electric motor and the like, in combination with a suitable element that converts the rotational movement into translational movement (crank mechanism and eccentric cam), while it is also possible to introduce a pneumatically-driven piston unit and the like. In such case, the above said pull handle 14 should be replaced with a handle shaped so as to permit connection with the drive unit, for example by means of a pin, whereby the handle of the lower section of the device must be rigidly clamped in a suitable clamping device.
The device according to the present invention has been described and detailed in the attached drawings in an understandable manned and by means of concrete examples of use and operation. Various version of this device are possible, which however fall within the scope of this invention.

Claims

Claims
1. A magazine loader device (1), characterized in that it consists of:
a lower section (1 A) consisting of the right part of the housing (1 1), a left part of the housing (12), a latch (13) and a pull handle (14), a spring guide rod (15), a spring (15A), a holder (16), a tripping plunger (17), a pin (18) and a preloaded spring (18A), where the latch (13) has a front opening (13F) for receiving the guide rod (15) of the spring (15A), which is fixed into the holder (16) on the rear end, guide (13B) running along the entire latch (13) and guide (13C) running approximately along the front quarter of the latch (13) and in the internal upper section a controlling curve (13E) with guides (1 1 A, 12A, 1 IB, 12B) located in the left and right section of the housing (1 1 , 12), which during the operation of the lower section of the device (1A) work together with the said guides of the latch (13B, 13C), and where in the assembled state the lower sections (2 IB), (22B) of the left and right part of the housing (1 1 , 12) form a hollow grip (2 IB, 22B) where the magazine is inserted (20),
- the upper section (IB) consisting of a housing (31) which has a revision opening (51 L) on the left side, closed with a transparent covering element (51 M), and a lower fork (32), rear fork (33), plates (41J), rotating wheel (35) in the interior; where a hopper (61 ) is fitted onto the housing with a seal (62) and where the hopper (61) and housing (31) are connected through an inlet opening for cartridges (31 A); where the said housing on the outer right side has a spring (41G) and outer fork (34) which is rigidly connected to the rear fork (33) by means of pins (34A),
where the lower section (1A) and upper section (I B) of the device 1 are rigidly interconnected by means of a sliding rail (4 I B) which is located on the right side (41 ) of the housing (31) of the lower section (I B), and corresponding guides (12F) on the left outer area of the housing (12) of the lower section (1A) of the device (1), and a pin running through an opening (81) on the sliding rail (4 IB) and an opening (82) in the left side of the housing (12).
2. The device according to claim 1 characterized in that, the tripping plunger (17) consists of a lower portion (17A), upper portion (1.7B), wheel (17C) freely rotating on a pin (17E) and a spring (17D), wherein during operation the tripping plunger (17) slides along the corresponding vertical guides of the left and right sides of the housing (l l C, 12C), a wheel (17C) runs along the controlling curve (13E) and wherein the preloaded spring (18A) pushes the plunger (17) upwards to the controlling curve (13E), and in that, that both portions (17A, 17B) of the plunger (17) are mutually movable around the axis of the pin (17F) only if the upper portion (17B) rotates forward, while the rotation in the opposite direction is prevented.
3. The device according to claim 1 characterized in that said rear fork (33) contains the lower, horizontal arm (33A), a vertical member (33B) with a protruding cam surface (33D), an upper horizontal arm (33C) with a downward protruding cam surface (33E) and two holes (33F) for connection with the outer fork (34), and that said outer fork (34) contains a slot (34B) along which the pin (13D1) and lever (34C) run.
4. The device according to any preceding claim, characterized in that said rotating wheel (35) consists of two discs (35 A) which are located in parallel planes and are interconnected by four pins (35B) which are uniformly distributed across the outer edges of said discs (35A) where both discs have an extended pin (35C) on the outer sides, wherein said pins (35C) are of the same or different length.
5. The device according to any preceding claim, characterized in that the length of latch stroke (13) is greater than the length of outer fork stroke (34), and that the rotating wheel stroke length (35) is smaller than the stroke length of outer fork (34).
6. The device according to any preceding claim, characterized in that the rotating wheel (35) is forcibly positioned correctly in its rearmost position, by means of plates (41 J).
7. The device according to any preceding claim, characterized in that irrespective of whether the cartridge (N) falls into the opening (31 A) with bullet facing down or sleeve facing down, it shall always fall into the opening (41C) with bullet facing down, by means of the rotating wheel (35), rear fork (34) and lower fork (32).
8. The device according to any preceding claim, characterized in that in case the cartridge (N) falls into the opening (31 A) with bullet facing down, the rear fork (33) turns the rotating wheel (35) with the lower horizontal arm (33A) by approximately 45° so that the cartridge (N) is discharged from the rotating wheel (35) into the opening (41C) facing correctly.
9. The device according to any claim 1 to 5, characterized in that in case the cartridge (N) falls into the opening with the sleeve facing down, the rear fork (33) turns the rotating wheel (35) with the upper horizontal arm (33C) and protruding cam surface (33E) by approximately 90° and pushes it from the rotating wheel (35) by means of protruding cam surface (33D) so that the rotating wheel turns in the same direction for another 45° due to the weight of the cartridge in order to be discharged from the rotating wheel (35) into the opening (41 C) facing correctly.
10. The device according to any preceding claim, characterized in that during its operation (1) no more than two cartridges (N) can travel through it simultaneously, wherein no more than one cartridge (N) travels through the lower section (1A) towards magazine (20) and wherein no more than one cartridge (N) travels through the upper section (IB) of the device towards the lower section (1A) of the device.
1 1. The device according to any preceding claim characterized in that said hollow grip (2 IB, 22B) is removable, and that said pull handle (14) is removable.
12. The device according to any claim characterized in that it enables loading of cartridges (N) into the magazine (20) at a rate of 0,5 to 2 cartridges per second, preferably 1 cartridge per second.
13. The lower section (1A) of the device (1), as described in any claim 1 , 2, 5, 10, 1 1 , and 12, characterized in that it can be used independently without the upper section (I B).
PCT/SI2015/000017 2014-05-05 2015-04-29 Magazine loader device WO2015171081A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US15/309,006 US9846005B2 (en) 2014-05-05 2015-04-29 Magazine loader device

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
SI201400165A SI24724A (en) 2014-05-05 2014-05-05 A device for loading charges in the clip of the weapon
SIP-201400165 2014-05-05

Publications (2)

Publication Number Publication Date
WO2015171081A1 true WO2015171081A1 (en) 2015-11-12
WO2015171081A4 WO2015171081A4 (en) 2016-01-07

Family

ID=53502819

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/SI2015/000017 WO2015171081A1 (en) 2014-05-05 2015-04-29 Magazine loader device

Country Status (3)

Country Link
US (1) US9846005B2 (en)
SI (1) SI24724A (en)
WO (1) WO2015171081A1 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018147822A1 (en) * 2017-02-10 2018-08-16 Kilic Recep Magazine filling apparatus
US10175017B2 (en) * 2015-08-19 2019-01-08 Battenfeld Technologies, Inc. Firearm magazine loader having adjustable magazine well
US10557677B1 (en) * 2017-03-24 2020-02-11 John D. Martelli Magazine loader apparatus and method

Families Citing this family (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20200049438A1 (en) * 2012-11-22 2020-02-13 Larry P. Hatch Loading cartridges into a firearm magazine
US9719741B1 (en) * 2014-01-14 2017-08-01 Magpump, Llc Magazine loading device
USD829295S1 (en) * 2016-12-01 2018-09-25 Patrick T. Buckner Ammo loader
USD821534S1 (en) * 2017-06-14 2018-06-26 William Christopher Couie Firearm magazine loader/unloader
WO2018237356A1 (en) * 2017-06-22 2018-12-27 Rosenblum Neal B Speed loader for firearm magazines
US10132582B1 (en) * 2017-12-14 2018-11-20 Junsheng Zhou System for rapidly reloading removable ammunition magazines
US10788281B2 (en) * 2018-01-23 2020-09-29 Magpump, Llc Firearm magazine loader and method operable with magazine adapters
USD957565S1 (en) 2018-06-07 2022-07-12 Magpump, Llc Adapter for ammunition magazines
USD896340S1 (en) * 2018-06-08 2020-09-15 Magpump, Llc Ammunition magazine loader
US10598456B1 (en) 2018-10-02 2020-03-24 Maglula, Ltd. Magazine lockable loader with self-rising plunger
US10914541B2 (en) * 2018-11-15 2021-02-09 Daniel Jason Oross Magazine loader system
CN109373805B (en) * 2018-12-07 2023-08-22 宁波诺驰贸易有限公司 Quick loading device for magazine
US11041684B1 (en) * 2019-05-30 2021-06-22 Daniel L Higby Cartridge loader
US10871337B1 (en) 2020-01-30 2020-12-22 Junsheng Zhou Plunger driven reloading system for removable ammunition magazines

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5301449A (en) * 1992-11-13 1994-04-12 Jackson Terry R Magazine cartridge loader
US20100175294A1 (en) * 2009-01-14 2010-07-15 Edward Steele Meinel Rapid Pistol Magazine Loader

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4719715A (en) * 1987-04-17 1988-01-19 Howard William J Magazine charger
US4939862A (en) * 1986-09-02 1990-07-10 Ram-Line, Inc. Method and apparatus for orienting and loading cartridges
IL145348A0 (en) * 2001-09-10 2003-10-31 Heavy duty magazine speed loader
US9003687B2 (en) * 2013-03-14 2015-04-14 Battenfeld Technologies, Inc. Firearm magazine loader
US20140298704A1 (en) * 2013-04-08 2014-10-09 Jeffery N Niccum Special Telescoping Magazine Ammunition Loader and Unloader

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5301449A (en) * 1992-11-13 1994-04-12 Jackson Terry R Magazine cartridge loader
US20100175294A1 (en) * 2009-01-14 2010-07-15 Edward Steele Meinel Rapid Pistol Magazine Loader

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10175017B2 (en) * 2015-08-19 2019-01-08 Battenfeld Technologies, Inc. Firearm magazine loader having adjustable magazine well
US10330411B2 (en) * 2015-08-19 2019-06-25 Battenfeld Technologies, Inc. Handgun magazine loader having cartridge driver
US10641566B2 (en) 2015-08-19 2020-05-05 Battenfeld Technologies, Inc. Handgun magazine loader having cartridge driver
US10830547B2 (en) 2015-08-19 2020-11-10 Aob Products Company Firearm magazine loader having adjustable magazine well
WO2018147822A1 (en) * 2017-02-10 2018-08-16 Kilic Recep Magazine filling apparatus
US10557677B1 (en) * 2017-03-24 2020-02-11 John D. Martelli Magazine loader apparatus and method

Also Published As

Publication number Publication date
US9846005B2 (en) 2017-12-19
WO2015171081A4 (en) 2016-01-07
SI24724A (en) 2015-11-30
US20170067707A1 (en) 2017-03-09

Similar Documents

Publication Publication Date Title
US9846005B2 (en) Magazine loader device
US8931199B1 (en) Firearm magazine loader
EP3397917B1 (en) Varying barrel camming system for firearm
US4939862A (en) Method and apparatus for orienting and loading cartridges
US8356441B2 (en) Rapid pistol magazine loader
US10914541B2 (en) Magazine loader system
US8596254B2 (en) Toy launcher apparatus with fixed loadable magazine
US11118854B2 (en) Ammunition movement system and method for firearm magazine loaders
MXPA03006840A (en) Fluid dispenser.
US9347726B1 (en) Striker style firearm with improved mechanical function
US9897405B2 (en) Mini-gun with access door
EP3137839B1 (en) Shell loading system for firearm
CA2910962C (en) Minigun with improved access door
US10309736B2 (en) Shell loading system for firearm
WO2003064056A2 (en) Caulking gun
US7526887B2 (en) Pump gun
KR20210072751A (en) pet snack machine
US5058303A (en) Toy fire-arm for strip ammunition
RU2037130C1 (en) Magazine rifle
SK9336Y1 (en) Automatic breech of initiators of powder charge of large-caliber cartridge-free ammunition
USRE7405E (en) wkeeleb
US534516A (en) Third to m
PL211370B1 (en) Carriage of the automatic mechanism ramming the ammunition to the cartrdidge chamber, preferably of the self-propelled mortar

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 15733944

Country of ref document: EP

Kind code of ref document: A1

WWE Wipo information: entry into national phase

Ref document number: 15309006

Country of ref document: US

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 15733944

Country of ref document: EP

Kind code of ref document: A1